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Advanced geosynchronous radiation imager thermal infrared channel-to-channel co-registration algorithm based on cloud information and phase correlation

机译:基于云信息和相位相关的高级地球同步辐射成像器热红外通道到通道共同登记算法

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摘要

The channel-to-channel co-registration is an important performance metric for The Advanced Geosynchronous Radiation Imager (AGRI) of Fengyun-4A (FY-4A), Chinese geostationary meteorological satellite, and large co-registration errors can have a direct impact upon the reliability of the imager s quantitatively-derived products that rely on combinations of multiple thermal infrared (TIR) channels. Affected products include the cloud mask, fog, and sandstorm. The AGRI Imager TIR channel-to-channel co-registration algorithm based on cloud information and phase correlation is proposed, which allows a systematic calculation of the co-registration error between AGRI TIR channel image pairs. Firstly, the TIR images are preprocessed to obtain the cloud information spatial distribution images. Secondly, the co-registration error is calculated by fitting the low-frequency portion of the phase difference spectrum image of preprocessed image pairs. Finally, the error of the relative misalignment image is compensated in the frequency domain to achieve co- registration. The proposed algorithm is an area-based approach that does not rely on a set of fixed control points that may be impacted by clouds' presence. In fact, the cloud is the effective information in the algorithm and there is enough cloud information in the AGRI image pairs to calculate the co-registration error. The in-orbit TIR images of AGRI are processed. The results show that the proposed algorithm has better robustness and can better achieve co-registration between TIR image pairs with high precision on the sub-pixel level.
机译:通道到通道共同登记是Fengyun-4A(FY-4A),中国地球静漏气象卫星的高级地球同步辐射成像器(AGRI)的重要绩效指标,大型共同登记误差可以直接影响依赖于多个热红外(TIR)通道的组合的成像器S定量衍生产品的可靠性。受影响的产品包括云面膜,雾和沙尘暴。提出了基于云信息和相位相关的AGRI成像仪TIR信道到信道共同登记算法,其允许系统计算AGRI TIR信道图像对之间的共同登记误差。首先,预处理TIR图像以获得云信息空间分布图像。其次,通过拟合预处理的图像对的相差谱图像的低频部分来计算共登登误差。最后,在频域中补偿相对未对准图像的误差以实现共同注册。所提出的算法是一种基于区域的方法,不依赖于可能影响云的存在影响的一组固定控制点。实际上,云是算法中的有效信息,并且在Agri图像对中有足够的云信息来计算共登记误差。处理了AGRI的轨道TIR图像。结果表明,该算法具有更好的鲁棒性,并且可以更好地在子像素级别高精度地实现TIR图像对之间的共同登记。

著录项

  • 来源
    《Optical and quantum electronics》 |2021年第6期|335.1-335.15|共15页
  • 作者单位

    Shanghai Institute of Technical Physics Chinese Academy of Sciences Shanghai 200083 China Key Laboratory of Infrared Detection and Imaging Technology Shanghai Institute of Technical Physics Chinese Academy of Sciences Shanghai 200083 China University of Chinese Academy of Sciences Beijing 100049 China;

    Shanghai Institute of Technical Physics Chinese Academy of Sciences Shanghai 200083 China Key Laboratory of Infrared Detection and Imaging Technology Shanghai Institute of Technical Physics Chinese Academy of Sciences Shanghai 200083 China University of Chinese Academy of Sciences Beijing 100049 China;

    Shanghai Institute of Technical Physics Chinese Academy of Sciences Shanghai 200083 China Key Laboratory of Infrared Detection and Imaging Technology Shanghai Institute of Technical Physics Chinese Academy of Sciences Shanghai 200083 China University of Chinese Academy of Sciences Beijing 100049 China;

    Shanghai Institute of Technical Physics Chinese Academy of Sciences Shanghai 200083 China Key Laboratory of Infrared Detection and Imaging Technology Shanghai Institute of Technical Physics Chinese Academy of Sciences Shanghai 200083 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Co-registration; Cloud information; Phase correlation; AGRI TIR image; FY-4A;

    机译:共同登记;云信息;相相关;Agri TIR图像;FY-4A;

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